取向复合相变材料的性能、合成及应用研究进展

IF 14.9 1区 化学 Q1 Energy
Jun Tong, Zui Tao, Wenjie Hou, Chaoxing Yang, Tiantian Yuan, Huimin Liao, Xiubing Huang, Ge Wang
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引用次数: 0

摘要

在全球能源低碳转型的背景下,相变储能技术成为解决间歇性可再生能源问题的关键技术。定向相变复合材料(OCPCMs)由于其独特的定向导热结构,在保持相变元件的高储能能力的同时,在特定方向上实现了显著的导热性增强,在实际储能应用中受到广泛关注。本文系统地综述了近年来OCPCMs从合成、制备到应用场景的全面分析。在此,我们介绍了材料的传热机理分析,并从仿生的角度探讨了ocpcm中定向结构在传热行为方面的优势。然后重点总结和概括了ocpcm的制备方法,并根据不同的场景提出了合适的方法。此外,我们讨论了有限元模拟方法在ocpcm热管理行为监测中的应用,并展望了该材料未来的潜在应用领域。最后,希望本文的综述能够为学术界开发高性能ocpcm提供指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Recent advances in the properties, synthesis, and applications of oriented composite phase change materials

Recent advances in the properties, synthesis, and applications of oriented composite phase change materials
In the context of the global energy low-carbon transition, phase change energy storage technology becomes a key technology to solve the problem of intermittent renewable energy. Oriented phase change composites (OCPCMs) receive widespread attention in practical energy storage applications due to their unique oriented thermally conductive structure, which achieves significant thermal conductivity enhancement in specific directions while retaining the high energy storage capacity of the phase change components. This review systematically summarizes the overall analysis of OCPCMs from synthesis and preparation to application scenarios in recent years. Herein, we introduce the analysis of the heat transfer mechanism of the materials and explore the advantages of the oriented structure in OCPCMs in the heat transfer behavior from a bionic perspective. We then focus on summarizing and generalizing the methods for preparing OCPCMs, giving suggestions for suitable methods according to different scenarios. Besides, we discuss the application of finite element simulation methods to the monitoring of the thermal management behavior of OCPCMs, and look into the potential future application areas of such materials. Finally, it is hoped that this review will provide guidance for the academic community in developing high-performance OCPCMs.
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来源期刊
Journal of Energy Chemistry
Journal of Energy Chemistry CHEMISTRY, APPLIED-CHEMISTRY, PHYSICAL
CiteScore
19.10
自引率
8.40%
发文量
3631
审稿时长
15 days
期刊介绍: The Journal of Energy Chemistry, the official publication of Science Press and the Dalian Institute of Chemical Physics, Chinese Academy of Sciences, serves as a platform for reporting creative research and innovative applications in energy chemistry. It mainly reports on creative researches and innovative applications of chemical conversions of fossil energy, carbon dioxide, electrochemical energy and hydrogen energy, as well as the conversions of biomass and solar energy related with chemical issues to promote academic exchanges in the field of energy chemistry and to accelerate the exploration, research and development of energy science and technologies. This journal focuses on original research papers covering various topics within energy chemistry worldwide, including: Optimized utilization of fossil energy Hydrogen energy Conversion and storage of electrochemical energy Capture, storage, and chemical conversion of carbon dioxide Materials and nanotechnologies for energy conversion and storage Chemistry in biomass conversion Chemistry in the utilization of solar energy
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